DiMarco Brian N, Troian-Gautier Ludovic, Sampaio Renato N, Meyer Gerald J
Department of Chemistry , University of North Carolina at Chapel Hill , Chapel Hill , North Carolina 27599-3290 , USA . Email:
Chem Sci. 2017 Nov 17;9(4):940-949. doi: 10.1039/c7sc03839a. eCollection 2018 Jan 28.
Two sensitizers, [Ru(bpy)(dcb)] () and [Ru(bpy)(dpb)] (), where bpy is 2,2'-bipyridine, dcb is 4,4'-dicarboxylic acid-2,2'-bipyridine and dpb is 4,4'-diphosphonic acid-2,2'-bipyridine, were anchored to mesoporous TiO thin films and utilized to sensitize the reaction of TiO electrons with oxidized triphenylamines, TiO(e) + TPA → TiO + TPA, to visible light in CHCN electrolytes. A family of four symmetrically substituted triphenylamines (TPAs) with formal E(TPA) reduction potentials that spanned a 0.5 eV range was investigated. Surprisingly, the reaction followed first-order kinetics for two TPAs that provided the largest thermodynamic driving force. Such first-order reactivity indicates a strong Coulombic interaction between TPA and TiO that enables the injected electron to tunnel back in one concerted step. The kinetics for the other TPA derivatives were non-exponential and were modelled with the Kohlrausch-William-Watts (KWW) function. A Perrin-like reaction sphere model is proposed to rationalize the kinetic data. The activation energies were the same for all of the TPAs, within experimental error. The average rate constants were found to increase with the thermodynamic driving force, consistent with electron transfer in the Marcus normal region.
两种敏化剂,[Ru(bpy)(dcb)]()和[Ru(bpy)(dpb)](),其中bpy为2,2'-联吡啶,dcb为4,4'-二羧酸-2,2'-联吡啶,dpb为4,4'-二膦酸-2,2'-联吡啶,被锚定在介孔TiO薄膜上,并用于敏化TiO电子与氧化三苯胺的反应,TiO(e)+TPA→TiO+TPA,在CHCN电解质中对可见光产生响应。研究了一族四种具有形式E(TPA)还原电位且跨度为0.5 eV范围的对称取代三苯胺(TPA)。令人惊讶的是,对于提供最大热力学驱动力的两种TPA而言,该反应遵循一级动力学。这种一级反应性表明TPA与TiO之间存在强烈的库仑相互作用,可以使注入的电子以一个协同步骤隧穿回去。其他TPA衍生物的动力学是非指数性的,并用科尔劳施-威廉姆斯-瓦茨(KWW)函数进行建模分析。提出了一种类似佩林反应球的模型来解释动力学数据。在实验误差范围内,所有TPA的活化能相同。发现平均速率常数随热力学驱动力增加,这与马库斯正常区域的电子转移一致